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接种CNPMS B119和CNPMS B2084可提高巴西土壤有效磷含量及玉米产量。

Inoculation with CNPMS B119 and CNPMS B2084 improve P-acquisition and maize yield in Brazil.

作者信息

de Oliveira-Paiva Christiane Abreu, Bini Daniel, de Sousa Sylvia Morais, Ribeiro Vitória Palhares, Dos Santos Flávia Cristina, de Paula Lana Ubiraci Gomes, de Souza Fabiane Ferreira, Gomes Eliane Aparecida, Marriel Ivanildo Evódio

机构信息

Microbiology Laboratory, Embrapa Milho e Sorgo, Sete Lagoas, Brazil.

Applied Biology Center, Embrapa Milho e Sorgo, Sete Lagoas, Brazil.

出版信息

Front Microbiol. 2024 Jun 26;15:1426166. doi: 10.3389/fmicb.2024.1426166. eCollection 2024.

Abstract

Phosphorus (P) is a critical nutrient for plant growth, yet its uptake is often hindered by soil factors like clay minerals and metal oxides such as aluminum (Al), iron (Fe), and calcium (Ca), which bind P and limit its availability. Phosphate-solubilizing bacteria (PSB) have the unique ability to convert insoluble P into a soluble form, thereby fostering plant growth. This study aimed to assess the efficacy of inoculation of B119 (rhizospheric) and B2084 (endophytic) via seed treatment in enhancing maize yield, grain P content, and enzyme activities across two distinct soil types in field conditions. Additionally, we investigated various mechanisms contributing to plant growth promotion, compatibility with commercial inoculants, and the maize root adhesion profile of these strains. During five crop seasons in two experimental areas in Brazil, Sete Lagoas-MG and Santo Antônio de Goiás-GO, single inoculations with either B119 or B2084 were implemented in three seasons, while a co-inoculation with both strains was applied in two seasons. All treatments received P fertilizer according to plot recommendations, except for control. Both the strains exhibited plant growth-promoting properties relevant to P dynamics, including phosphate solubilization and mineralization, production of indole-3-acetic acid (IAA)-like molecules, siderophores, exopolysaccharides (EPS), biofilms, and phosphatases, with no antagonism observed with and . Strain B2084 displayed superior maize root adhesion compared to B119. In field trials, single inoculations with either B119 or B2084 resulted in increased maize grain yield, with relative average productivities of 22 and 16% in Sete Lagoas and 6 and 3% in Santo Antônio de Goiás, respectively. Co-inoculation proved more effective, with an average yield increase of 24% in Sete Lagoas and 11% in Santo Antônio de Goiás compared to the non-inoculated control. Across all seasons, accumulated grain P content correlated with yield, and soil P availability in the rhizosphere increased after co-inoculation in Santo Antônio de Goiás. These findings complement previous research efforts and have led to the validation and registration of the first Brazilian inoculant formulated with strains for maize, effectively enhancing and P grain content.

摘要

磷(P)是植物生长的关键养分,但其吸收常常受到土壤因素的阻碍,如粘土矿物以及铝(Al)、铁(Fe)和钙(Ca)等金属氧化物,这些物质会结合磷并限制其有效性。解磷细菌(PSB)具有将不溶性磷转化为可溶性形式的独特能力,从而促进植物生长。本研究旨在评估通过种子处理接种根际细菌B119和内生细菌B2084在田间条件下对两种不同土壤类型的玉米产量、籽粒磷含量和酶活性的提升效果。此外,我们还研究了促进植物生长的各种机制、与商业接种剂的兼容性以及这些菌株在玉米根上的附着情况。在巴西塞特湖斯-米纳斯吉拉斯州和圣安东尼奥-戈亚斯州的两个试验区进行的五个作物季中,三个季节单独接种B119或B2084,两个季节同时接种这两种菌株。除对照外,所有处理均根据小区推荐施用磷肥。这两种菌株均表现出与磷动态相关的促进植物生长特性,包括磷的溶解和矿化、吲哚-3-乙酸(IAA)类分子、铁载体、胞外多糖(EPS)、生物膜和磷酸酶的产生,且未观察到与[此处原文缺失相关菌株信息]的拮抗作用。与B119相比,菌株B2084在玉米根上的附着性更强。在田间试验中,单独接种B119或B2084均使玉米籽粒产量增加,在塞特湖斯相对平均增产率分别为22%和16%,在圣安东尼奥-戈亚斯分别为6%和3%。同时接种证明更有效,与未接种对照相比,在塞特湖斯平均增产24%,在圣安东尼奥-戈亚斯平均增产11%。在所有季节中,籽粒磷积累含量与产量相关,在圣安东尼奥-戈亚斯同时接种后根际土壤磷有效性增加。这些发现补充了先前的研究工作,并促成了首个用[此处原文缺失相关菌株信息]菌株配制的巴西玉米接种剂的验证和注册,有效提高了产量和籽粒磷含量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c832/11233657/348d4147d2b9/fmicb-15-1426166-g001.jpg

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